911±¬ÁÏÍø

Innovation portfolio

PCMI

PCMI offers a solution to the poor energy efficiency of insulations and the use of environmentally harmful raw materials in them. The lightweight, shape-retaining PCMI insulation solution balances temperature changes by self-regulation and made entirely from bio-based materials.
An insulation sample

Status:

Pre-business

SDGs:

Industry, innovation and infrastructure, Responsible consumption and production

Industry:

Microtech, nanotech and materials

Impact:

Sustainable materials

Origin:

Research to Business

School:

School of Engineering

Established:

2023

Heat flows as a result of contact between materials with different temperatures. Thermal insulation prevents heat exchange between materials where needed. This makes insulation materials widely important in daily life use for example in electronics, buildings, packaging, etc. There are common insulation materials on the market such as mineral fibers, polystyrene, natural fibers, or rigid foam boards. But majority of these products are fossil-fuel-based, non-biodegradable, or inefficient in controlling temperature. This project introduces a new type of insulation materials as a perfect candidate for self-regulating thermo-packaging. Our insulation is composed of bio-feedstocks and phase change materials (PCM) that can help achieving a more energy-efficient temperature-control via leakage-free phase change processes. Our PCM Insulation (PCMI) can absorb and release extra thermal energy while keeping the temperature constant. PCMI is eco-friendly and reduces carbon footprint compared to traditional insulation packaging such as polystyrene or polyurethane foams. PCMI offers effective thermal protection with a lightweight bio-based origin, significantly preventing temperature fluctuations for example during goods transport and delivery.

Contact

Roza Yazdani

Principle Investigator

News from innovation ecosystem

Two people flying a kite outside with a modern building in the background. One wears a yellow shirt, the other a red jacket.
Cooperation, Research & Art, University Published:

Strong results from the Research Council’s winter call

A total of 54 Aalto researchers received Academy Research Fellow or Academy Project funding from the Research Council of Finland. The total funding awarded to 911±¬ÁÏÍø amounts to 33.2 million euros.
Aerial view of a modern campus with red brick buildings, tram tracks and a lake with forest in the background
Press releases Published:

St1 donates EUR 3 million to 911±¬ÁÏÍø to accelerate the sustainable energy transition

Lahjoituksella tuetaan kahden uuden professuurin perustamista: uudet energiateknologiat ja -innovaatiot sekä energiastrategia.
Close view of a wind turbine above a green forest, with more turbines and a sunset sky in the distance
Press releases Published:

Fortum donates EUR 1.5 million to 911±¬ÁÏÍø

The donation is directed towards a new professorship, which will be part of the House of Energy Transition competence centre.
Six adults in smart clothing pose outside a brick building with wall art and a modern campus in the background
Press releases Published:

ABB donates EUR 1.5 million to 911±¬ÁÏÍø to accelerate the energy transition

The donation will support the new competence centre, House of Energy Transition.
  • Updated:
  • Published:
Share
URL copied!